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On the strength of β-sheet crystallites of Bombyx mori silk fibroin

机译:关于家蚕丝素蛋白β片微晶的强度

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摘要

Silk fibroin, a natural multi-domain protein, has attracted great attention due to its superior mechanical properties such as ultra-high strength and stretchability, biocompatibility, as well as its versatile biodegradability and processability. It is mainly composed of β-sheet crystallites and amorphous domains. Although its strength is well known to be controlled by the dissociation of protein chains from β-sheet crystallites, the way that water as the solvent affects its strength and the reason that its theoretically predicted strength is several times higher than experimental measurement remain unclear. We perform all-atom molecular dynamics simulations on a β-sheet crystallite of Bombyx mori silk. We find that water solvent reduces the number and strength of hydrogen bonds between β-chains, and thus greatly weakens the strength of silk fibroin. By dissociating protein chains at different locations from the crystallite, we also find that the pulling strength for the interior chains is several times higher than that for the surface/corner chains, with the former being consistent with the theoretically predicted value, while the latter on par with the experimental value. It is shown that the weakest rupture strength controls the failure strength of silk fibre. Hence, this work sheds light on the role of water in the strength of silk fibroin and also provides clues on the origin of the strength difference between theory and experiment.
机译:丝素蛋白是一种天然的多域蛋白,由于其卓越的机械性能(如超高强度和可拉伸性,生物相容性以及其广泛的生物降解性和可加工性)而备受关注。它主要由β-片状微晶和非晶域组成。尽管众所周知它的强度受β-折叠微晶中蛋白质链的解离控制,但水作为溶剂影响其强度的方式以及其理论预测强度比实验测量值高几倍的原因仍不清楚。我们对家蚕丝的β片微晶进行全原子分子动力学模拟。我们发现水溶剂降低了β链之间氢键的数量和强度,从而大大削弱了丝素蛋白的强度。通过将蛋白质链从微晶处解离,我们还发现内部链的拉力比表面/角链的拉力高几倍,前者与理论预测值一致,而后者在理论上一致与实验值相当。结果表明,最弱的断裂强度控制着丝纤维的断裂强度。因此,这项工作揭示了水在丝素蛋白强度中的作用,并为理论和实验之间的强度差异的起源提供了线索。

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